首页> 美国卫生研究院文献>Molecular Medicine >Activation of platelet-activating factor (PAF) receptor stimulates nitric oxide (NO) release via protein kinase C-alpha in HEC-1B human endometrial epithelial cell line.
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Activation of platelet-activating factor (PAF) receptor stimulates nitric oxide (NO) release via protein kinase C-alpha in HEC-1B human endometrial epithelial cell line.

机译:血小板活化因子(PAF)受体的激活通过HEC-1B人子宫内膜上皮细胞系中的蛋白激酶C-alpha刺激一氧化氮(NO)释放。

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摘要

BACKGROUND: Impairment of the fertility in the platelet-activating factor (PAF) receptor transgenic female mice suggests changes in PAF functions can influence uterine receptivity. We hypothesized that vasodilatory actions of PAF in the uterus was exerted by PAF-mediated nitric oxide (NO) release via activation of isoenzyme-specific protein kinase C (PKC). MATERIALS AND METHODS: Inducible and endothelial NOS was shown by Reverse transcription polymerase chain reaction RT-PCR in cDNA synthesized from RNA extract of proliferative and secretory endometrium as well endometrial epithelial cell lines HEC-1B. The effect of WEB2170, N(G)-monomethyl-L-arginine (L-NMMA) and Ro31-8220 on PAF mediated NO release by HEC-1B cell was determined. PAF induced translocation of PKCalpha in HEC-1B cell and its antagonist effect by Ro 31-8220 was studied by Western immunoblot analysis. PKC isoenzyme regulated by PAF was determined in HEC-1B cell lysate by immunoprecipitation. RESULTS: PAF-evoked a rapid and concentration-dependent biphasic increase in total NO in human HEC-1B endometrial epithelial cell line [as measured by a Sievers NOA 280A NO Chemiluminescent Analyser.] This increase in NO release was attenuated by the PAF receptor antagonist, WEB2170. Inhibition of NO synthesis by N(G)-monomethyl-L-arginine produced marked dose-dependent attenuation of PAF-mediated NO release, indicating nitric oxide synthase (NOS) activation. PAF-mediated NO release was also inhibited by the PKC inhibitor Ro 31-8220 and by the removal of extracellular calcium, suggesting a dependency on PKC and calcium, respectively. RT-PCR analysis showed expression of inducible NOS and endothelial NOS in human endometrium, myometrium and HEC-1B cells. Western immunoblot analysis showed PKCalpha, betaII and iota were the principal isozymes present in the HEC-1B cell line and normal endometrium, suggesting that both HEC-1B cells and normal endometrium have similar PKC isozymes. PAF induced the translocation of both PKCalpha and PKCiota within the time frame of NO release. The translocation of PKCalpha, but not PKCiota, was susceptible to inhibition by Ro 31-8220 that also inhibited PAF-evoked NO release, suggesting that PKCalpha is the principal isozyme involved in this process and that eNOS may be a substrate for PKCalpha. Kinase assays performed using immunoprecipitated PKCalpha showed that PAF (1 nM) activated PKCalpha that was inhibited by co-incubation with Ro31-8220 and Ca(2+)-free medium. CONCLUSIONS: This study demonstrates that PAF-stimulated NO release via PKCalpha in epithelial cells might regulate endometrial functions such as implantation and menstruation.
机译:背景:血小板活化因子(PAF)受体转基因雌性小鼠的生育能力受损表明PAF功能的改变会影响子宫的接受性。我们假设PAF在子宫内的血管舒张作用是通过PAF介导的一氧化氮(NO)释放通过激活同工酶特异性蛋白激酶C(PKC)来实现的。材料与方法:逆转录聚合酶链反应RT-PCR在增殖和分泌性子宫内膜RNA提取物以及子宫内膜上皮细胞系HEC-1B合成的cDNA中显示出诱导型和内皮型NOS。确定了WEB2170,N(G)-单甲基-L-精氨酸(L-NMMA)和Ro31-8220对PAF介导的HEC-1B细胞释放NO的影响。通过Western免疫印迹分析研究PAF诱导PKCalpha在HEC-1B细胞中的易位及其对Ro 31-8220的拮抗作用。通过免疫沉淀法测定HEC-1B细胞裂解物中PAF调节的PKC同工酶。结果:PAF引起人HEC-1B子宫内膜上皮细胞系中总NO的快速且浓度依赖性的双相增加[通过Sievers NOA 280A NO化学发光分析仪测量。] NO释放的这种增加被PAF受体拮抗剂减弱了。 ,WEB2170。 N(G)-单甲基-L-精氨酸对NO合成的抑制作用导致PAF介导的NO释放具有明显的剂量依赖性衰减,表明一氧化氮合酶(NOS)活化。 PAF介导的NO释放也被PKC抑制剂Ro 31-8220和细胞外钙的去除所抑制,表明分别依赖于PKC和钙。 RT-PCR分析显示人子宫内膜,子宫肌层和HEC-1B细胞中诱导型NOS和内皮型NOS的表达。 Western免疫印迹分析显示,PKCalpha,betaII和iota是HEC-1B细胞系和正常子宫内膜中存在的主要同工酶,表明HEC-1B细胞和正常子宫内膜具有相似的PKC同工酶。 PAF在NO释放的时间范围内诱导了PKCalpha和PKCiota的移位。 PKCalpha而不是PKCiota的易位易受Ro 31-8220的抑制,而Ro 31-8220也抑制PAF引起的NO释放,这表明PKCalpha是该过程涉及的主要同工酶,而eNOS可能是PKCalpha的底物。使用免疫沉淀的PKCalpha进行的激酶分析表明,PAF(1 nM)激活了PKCalpha,该蛋白被与Ro31-8220和不含Ca(2+)的培养基共同孵育而被抑制。结论:这项研究表明PAF刺激PKCalpha通过上皮细胞释放NO可能调节子宫内膜功能,例如着床和月经。

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